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储能系统技术 ★ 5.0

圆柱形锂离子电池串联电弧的演化规律及诱发失效研究

Study on the evolution laws and induced failure of series arcs in cylindrical lithium-ion batteries

作者 Wenqiang Xu · Kai Zhou · Yalun Li · Bin Gao · Xiaogang Wu · Xinyu Rui · Yu Wu · Hewu Wang · Languang Lu · Minggao Ouyang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 377 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 An experimental platform simulating the arc on battery electrode has been established.
语言:

中文摘要

摘要 随着储能与动力电池系统电压等级的提升,电池系统的电气安全问题受到广泛关注。电池系统中因连接松动等电气故障引发的串联电弧问题日益严重。然而,目前针对电池系统中串联电弧的研究仍处于初级阶段。因此,为探究电池相关的电弧灾害问题,本研究搭建了模拟串联电弧故障的实验平台。以正极接线端电弧为重点研究对象,探讨了不同条件下电池相关电弧的演化规律,并分析了其对电池造成的危害效应。结果表明,当系统电压为200 V、电路电流为2C时,不同荷电状态(SOC)的电池均可产生稳定的电弧。同时,电弧可熔穿电池外壳形成孔洞,导致电解液泄漏,并引发电池短路和断路故障。本研究的成果填补了电池系统电弧安全领域的研究空白,对于提升电弧防护的安全性能具有重要意义。

English Abstract

Abstract With the increase of voltage level in energy-storage and power battery system, the electrical safety phenomenon of battery systems has received extensive attention. The issue of series arcs caused by electrical failure such as loose connections in battery systems has become increasingly serious. However, research on series arcs in battery systems is still in its early stages. Therefore, to investigate arc-related disasters in batteries , this study establishes an experimental platform to simulate series arc faults . Taking positive electrode terminal arcs as the focused point, this study explores the evolutionary patterns of battery-related arcs and under different conditions, and analyzes the hazardous effects on batteries. The results indicate that stable arcs can be generated in batteries with different states of charge (SOC) when the system voltage is 200 V and the circuit current is 2C. At the same time, the arc can melt the battery casing to form holes, leading to electrolyte leakage, and triggering battery short-circuit and open-circuit failures. The research findings of this study fill a gap in the field of battery system arc safety and are of vital importance for enhancing the safety performance of arc protection.
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SunView 深度解读

该研究揭示的200V系统串联电弧演化规律对阳光电源储能系统安全设计具有重要参考价值。针对ST系列PCS及PowerTitan储能系统,建议在电池簇连接处集成电弧检测算法,通过监测电流波动特征实现早期预警。研究中电弧导致的电池壳体熔穿、电解液泄漏等失效模式,可指导iSolarCloud平台开发基于温升梯度和阻抗突变的故障诊断模型。对于充电桩产品,应在连接器设计中强化接触可靠性,并在控制策略中加入电弧抑制逻辑,提升系统本质安全水平。